We introduce a hybridizable discontinuous Galerkin method for the incompressible Navier--Stokes equations for which the approximate velocity field is pointwise divergence-free. The method builds on the method presented by Labeur and Wells [SIAM J. Sci. Comput., vol. 34 (2012), pp. A889--A913]. We show that with modifications of the function spaces in the method of Labeur and Wells it is possible to formulate a simple method with pointwise divergence-free velocity fields which is momentum conserving, energy stable, and pressure-robust. Theoretical results are supported by two- and three-dimensional numerical examples and for different orders of polynomial approximation
A high-order energy-stable method for solving the incompressible Navier-Stokes equations based on hy...
We present analysis of two lowest-order hybridizable discontinuous Galerkin methods for the Stokes p...
A hybrid method for the incompressible Navier–Stokes equations is presented. The ethod inherits the ...
We introduce a hybridizable discontinuous Galerkin method for the incompressible Navier–Stokes equat...
We introduce a hybridizable discontinuous Galerkin method for the incompressible Navier–Stokes equat...
We present well-posedness and an a priori error analysis of the hybridized discontinuous Galerkin m...
We present a finite element method for the incompressible Navier--Stokes problem that is locally con...
We present a class of discontinuous Galerkin methods for the incompressible Navier-Stokes equation...
We present and analyze a new embedded--hybridized discontinuous Galerkin finite element method for t...
We introduce and analyze a space-time hybridized discontinuous Galerkin method for the evolutionary ...
We introduce an embedded-hybridized discontinuous Galerkin (EDG-HDG) method for the coupled Stokes-D...
The embedded discontinuous Galerkin (EDG) finite element method for the Stokes problem results in a ...
In the first major contribution of this thesis, we present analysis of two lowest-order hybridizable...
This paper presents a space-time embedded-hybridized discontinuous Galerkin (EHDG) method for the Na...
An interior penalty method and a compact discontinuous Galerkin method are proposed and compared for...
A high-order energy-stable method for solving the incompressible Navier-Stokes equations based on hy...
We present analysis of two lowest-order hybridizable discontinuous Galerkin methods for the Stokes p...
A hybrid method for the incompressible Navier–Stokes equations is presented. The ethod inherits the ...
We introduce a hybridizable discontinuous Galerkin method for the incompressible Navier–Stokes equat...
We introduce a hybridizable discontinuous Galerkin method for the incompressible Navier–Stokes equat...
We present well-posedness and an a priori error analysis of the hybridized discontinuous Galerkin m...
We present a finite element method for the incompressible Navier--Stokes problem that is locally con...
We present a class of discontinuous Galerkin methods for the incompressible Navier-Stokes equation...
We present and analyze a new embedded--hybridized discontinuous Galerkin finite element method for t...
We introduce and analyze a space-time hybridized discontinuous Galerkin method for the evolutionary ...
We introduce an embedded-hybridized discontinuous Galerkin (EDG-HDG) method for the coupled Stokes-D...
The embedded discontinuous Galerkin (EDG) finite element method for the Stokes problem results in a ...
In the first major contribution of this thesis, we present analysis of two lowest-order hybridizable...
This paper presents a space-time embedded-hybridized discontinuous Galerkin (EHDG) method for the Na...
An interior penalty method and a compact discontinuous Galerkin method are proposed and compared for...
A high-order energy-stable method for solving the incompressible Navier-Stokes equations based on hy...
We present analysis of two lowest-order hybridizable discontinuous Galerkin methods for the Stokes p...
A hybrid method for the incompressible Navier–Stokes equations is presented. The ethod inherits the ...